Harvard Catalyst Profiles

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Tess Noelle Whitwam

Concepts (79)

Concepts are derived automatically from a person's publications.
Concepts are listed by decreasing relevance which is based on many factors, including how many publications the person wrote about that topic, how long ago those publications were written, and how many publications other people have written on that same topic.
Name Number of Publications Most Recent Publication Publications by All Authors Concept Score Why?
Ion Channels4201810780.470 Why?
Ion Channel Gating220184420.180 Why?
Voltage-Dependent Anion Channels12018180.180 Why?
Methyl-CpG-Binding Protein 2120191890.170 Why?
Anemia, Hemolytic, Congenital12018710.160 Why?
Hydrops Fetalis12018990.160 Why?
Lymphangiogenesis120181850.160 Why?
Lymphatic System120182580.150 Why?
Tropomyosin120161010.150 Why?
Intermediate Filaments120161560.140 Why?
Conserved Sequence1201812380.130 Why?
Lymphatic Vessels120183280.130 Why?
Cryoelectron Microscopy120175150.130 Why?
Mechanotransduction, Cellular120185220.120 Why?
Protein Multimerization120189970.120 Why?
Structure-Activity Relationship1201832060.110 Why?
Evolution, Molecular1201819380.090 Why?
Malaria1201810870.090 Why?
Drosophila1201614620.090 Why?
Repressor Proteins1201930630.080 Why?
DNA Methylation1201940780.070 Why?
Transcription, Genetic1201978850.070 Why?
Membrane Proteins1201880470.050 Why?
Intermediate-Conductance Calcium-Activated Potassium Channels12018450.040 Why?
Actomyosin120181100.040 Why?
Pliability12017590.040 Why?
Intercellular Junctions120182600.040 Why?
Rett Syndrome120191600.040 Why?
Biophysical Phenomena120183330.040 Why?
Ion Transport120183270.040 Why?
Osmolar Concentration120186960.040 Why?
Protein Structure, Quaternary120184490.040 Why?
Plasmodium berghei120181650.040 Why?
NFATC Transcription Factors120183930.040 Why?
Dehydration120182380.040 Why?
Solubility1201711360.040 Why?
Liposomes120187440.030 Why?
Arabidopsis120184620.030 Why?
Cell Movement2201853970.030 Why?
Multigene Family1201811220.030 Why?
Cadherins120189130.030 Why?
Gadolinium120189100.030 Why?
Mice, Knockout22019150590.030 Why?
Amino Acids1201817110.030 Why?
Germ Cells120165870.030 Why?
HeLa Cells1201832130.030 Why?
Animals620191694200.030 Why?
Cell Adhesion1201832650.030 Why?
Mice42019803750.030 Why?
Protein Isoforms1201616950.030 Why?
Forkhead Transcription Factors1201815970.030 Why?
Cytoskeleton1201612190.030 Why?
RNA1201926130.020 Why?
Microtubules1201612080.020 Why?
Gene Deletion1201828240.020 Why?
Mutation32019292910.020 Why?
HEK293 Cells1201842660.020 Why?
Binding Sites1201762140.020 Why?
Erythrocytes1201824100.020 Why?
Actins1201621670.020 Why?
Antigens, CD1201841520.020 Why?
Models, Molecular1201754670.020 Why?
Alleles1201870990.020 Why?
Lipids1201732420.020 Why?
Endothelial Cells1201833740.020 Why?
DNA1201970970.020 Why?
Epithelial Cells1201636380.020 Why?
Genotype12018129190.010 Why?
Phenotype12018163110.010 Why?
T-Lymphocytes12018102840.010 Why?
Neurons1201993750.010 Why?
Mice, Inbred C57BL12018226650.010 Why?
Disease Models, Animal12018181990.010 Why?
Transcription Factors12018119530.010 Why?
Signal Transduction12018237290.010 Why?
Brain12019252060.010 Why?
Humans320187157770.010 Why?
Male120193503240.000 Why?
Female120163772040.000 Why?
Whitwam's Networks
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Concepts (79)
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Co-Authors (4)
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Funded by the NIH National Center for Advancing Translational Sciences through its Clinical and Translational Science Awards Program, grant number UL1TR002541.